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大鼠trkC基因座编码多种神经源性受体,这些受体在PC12细胞中对神经营养因子-3表现出不同的反应。

The rat trkC locus encodes multiple neurogenic receptors that exhibit differential response to neurotrophin-3 in PC12 cells.

作者信息

Tsoulfas P, Soppet D, Escandon E, Tessarollo L, Mendoza-Ramirez J L, Rosenthal A, Nikolics K, Parada L F

机构信息

Molecular Embryology Section, NCI-Frederick Cancer Research and Development Center, Frederick, Maryland 21702-1201.

出版信息

Neuron. 1993 May;10(5):975-90. doi: 10.1016/0896-6273(93)90212-a.

Abstract

Members of the Trk tyrosine kinase family have recently been identified as functional receptors of the NGF family of neurotrophins. Here we show the rat trkC locus to be complex, encoding at least four distinct polypeptides. Three of the encoded polypeptides are full-length receptor tyrosine kinases that differ by novel amino acid insertions in the kinase domain. A fourth protein is a truncated receptor that lacks the catalytic domain. Tyrosine phosphorylation, cross-linking, and ligand binding assays indicate that TrkC receptors interact with NT-3 and not with the related neurotrophins NGF, BDNF, xNT-4, or hNT-5. Furthermore, high and low affinity NT-3-binding sites are associated with the TrkC receptors. Stable and transient expression of TrkC receptors in PC12 cells indicates that the neurite outgrowth response elicited by NT-3 is dramatic in receptors lacking the novel kinase insert (gp150trkC) but absent in receptors containing the 14 amino acid insert in the kinase domain (gp150trkC14). These data suggest that the trkC locus encodes receptors that may be capable of mediating different biological responses within the cell. This could have important implications in understanding the role of neurotrophins in the development of the vertebrate nervous system.

摘要

Trk酪氨酸激酶家族成员最近被确定为神经营养因子NGF家族的功能性受体。在此我们显示大鼠trkC基因座很复杂,编码至少四种不同的多肽。其中三种编码的多肽是全长受体酪氨酸激酶,它们在激酶结构域中有新的氨基酸插入而有所不同。第四种蛋白质是一种缺少催化结构域的截短型受体。酪氨酸磷酸化、交联和配体结合试验表明,TrkC受体与NT-3相互作用,而不与相关的神经营养因子NGF、BDNF、xNT-4或hNT-5相互作用。此外,高亲和力和低亲和力的NT-3结合位点与TrkC受体相关。TrkC受体在PC12细胞中的稳定和瞬时表达表明,NT-3引发的神经突生长反应在缺乏新激酶插入的受体(gp150trkC)中很显著,但在激酶结构域中含有14个氨基酸插入的受体(gp150trkC14)中则不存在。这些数据表明,trkC基因座编码的受体可能能够介导细胞内不同的生物学反应。这对于理解神经营养因子在脊椎动物神经系统发育中的作用可能具有重要意义。

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